论文标题
高功率质子梁的新方法
Novel Approaches to High-Power Proton Beams
论文作者
论文摘要
Fermilab Long-Baseline Neutrino计划的潜在可实现的光束功率激发了Fermilab Proton Complect的快速循环同步加速器(RCS)强度升级,这激发了重振的设计和优化工作。我们检查了技术开发领域,并有可能对Fermilab RCS设计产生高影响 - 低损坏堆叠,先进的中微子 - 靶标R \&D,激光剥离H $^{ - } $注射,快速升压超损坏超过的超级特许磁铁,非线性非线性集成型Optics,Electrable Optics,Electron Lens Devices和Nextswern Cerness and Cernersen Cereserationalo Moritors。关于Fermilab Accelerator Science \&Technology(Fast)设施的简要概述,后三种技术将经过全面的光束测试。
The potentially realizable beam power at the Fermilab long-baseline neutrino program has motivated a reinvigorated design and optimization effort for a rapid-cycling synchrotron (RCS) intensity upgrade of the Fermilab proton complex. We examine areas of technological development with the potential for high-impact on the Fermilab RCS design - low-loss slip-stacking, advanced neutrino-target R\&D, laser-stripping H$^{-}$ injection, fast-ramping super-ferric magnets, nonlinear integrable optics, electron lens devices, and next-generation halo monitors. A brief overview is given on the Fermilab Accelerator Science \& Technology (FAST) facility, where the latter three technologies will undergo comprehensive beam tests.